Inside Conviva’s Decision To Power Its Data Platform With Airflow with Han Zhang episode artwork

EPISODE · Jan 22, 2026 · 21 MIN

Inside Conviva’s Decision To Power Its Data Platform With Airflow with Han Zhang

from The Data Flowcast: Mastering Apache Airflow ® for Data Engineering and AI · host Astronomer

Conviva operates at a massive scale, delivering outcome-based intelligence for digital businesses through real-time and batch data processing. As new use cases emerged, the team needed a way to extend a streaming-first architecture without rebuilding core systems.In this episode, Han Zhang joins us to explain how Conviva uses Apache Airflow as the orchestration backbone for its batch workloads, how the control plane is designed and what trade-offs shaped their platform decisions.Key Takeaways:00:00 Introduction.01:17 Large-scale data platforms require low-latency processing capabilities.02:08 Batch workloads can complement streaming pipelines for additional use cases.03:45 An orchestration framework can act as the core coordination layer.06:12 Batch processing enables workloads that streaming alone cannot support.08:50 Ecosystem maturity and observability are key orchestration considerations.10:15 Built-in run history and logs make failures easier to diagnose.14:20 Platform users can monitor workflows without managing orchestration logic.17:08 Identity, secrets and scheduling present ongoing optimization challenges.19:59 Configuration history and change visibility improve operational reliability.Resources Mentioned:Han Zhanghttps://www.linkedin.com/in/zhanghan177Conviva | Websitehttp://www.conviva.comApache Airflowhttps://airflow.apache.org/Celeryhttps://docs.celeryq.dev/Temporalhttps://temporal.io/Kuberneteshttps://kubernetes.io/LDAPhttps://ldap.com/Thanks for listening to “The Data Flowcast: Mastering Apache Airflow® for Data Engineering and AI.” If you enjoyed this episode, please leave a 5-star review to help get the word out about the show. And be sure to subscribe so you never miss any of the insightful conversations.#AI #Automation #Airflow

Conviva operates at a massive scale, delivering outcome-based intelligence for digital businesses through real-time and batch data processing. As new use cases emerged, the team needed a way to extend a streaming-first architecture without rebuilding core systems.In this episode, Han Zhang joins us to explain how Conviva uses Apache Airflow as the orchestration backbone for its batch workloads, how the control plane is designed and what trade-offs shaped their platform decisions.Key Takeaways:00:00 Introduction.01:17 Large-scale data platforms require low-latency processing capabilities.02:08 Batch workloads can complement streaming pipelines for additional use cases.03:45 An orchestration framework can act as the core coordination layer.06:12 Batch processing enables workloads that streaming alone cannot support.08:50 Ecosystem maturity and observability are key orchestration considerations.10:15 Built-in run history and logs make failures easier to diagnose.14:20 Platform users can monitor workflows without managing orchestration logic.17:08 Identity, secrets and scheduling present ongoing optimization challenges.19:59 Configuration history and change visibility improve operational reliability.Resources Mentioned:Han Zhanghttps://www.linkedin.com/in/zhanghan177Conviva | Websitehttp://www.conviva.comApache Airflowhttps://airflow.apache.org/Celeryhttps://docs.celeryq.dev/Temporalhttps://temporal.io/Kuberneteshttps://kubernetes.io/LDAPhttps://ldap.com/Thanks for listening to “The Data Flowcast: Mastering Apache Airflow® for Data Engineering and AI.” If you enjoyed this episode, please leave a 5-star review to help get the word out about the show. And be sure to subscribe so you never miss any of the insightful conversations.#AI #Automation #Airflow

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Inside Conviva’s Decision To Power Its Data Platform With Airflow with Han Zhang

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This episode was published on January 22, 2026.

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Conviva operates at a massive scale, delivering outcome-based intelligence for digital businesses through real-time and batch data processing. As new use cases emerged, the team needed a way to extend a streaming-first architecture without...

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